Chiou Shu-Yuan, Ha Choi-Lan, Wu Pei-Shan, Yeh Chiu-Ling, Su Ying-Shan, Li Man-Po, Wu Ming-Jiuan
Crop Environment Section, Hualien District Agricultural Research and Extension Station, Hualien 973, Taiwan.
Department of Health and Nutrition, Chia-Nan University of Pharmacy and Science, Tainan 717, Taiwan.
Int J Mol Sci. 2015 Dec 10;16(12):29522-41. doi: 10.3390/ijms161226184.
Camellia tenuifloria is an indigenous Camellia species used for the production of camellia oil in Taiwan. This study investigated for the first time the potential antioxidant, anti-tyrosinase and anti-inflammatory activities of oil production byproducts, specifically those of the fruit shell, seed shell, and seed pomace from C. tenuifloria. It was found that the crude ethanol extract of the seed shell had the strongest DPPH scavenging and mushroom tyrosinase inhibitory activities, followed by the fruit shell, while seed pomace was the weakest. The IC50 values of crude extracts and fractions on monophenolase were smaller than diphenolase. The phenolic-rich methanol fraction of seed shell (SM) reduced nitric oxide (NO) production, and inducible nitric oxide synthase (iNOS) expression in lipopolysaccharide (LPS)-stimulated RAW 264.7 cells. It also repressed the expression of IL-1β, and secretion of prostaglandin E₂ (PGE₂) and IL-6 in response to LPS. SM strongly stimulated heme oxygenase 1 (HO-1) expression and addition of zinc protoporphyrin (ZnPP), a HO-1 competitive inhibitor, reversed the inhibition of NO production, indicating the involvement of HO-1 in its anti-inflammatory activity. The effects observed in this study provide evidence for the reuse of residues from C. tenuifloria in the food additive, medicine and cosmetic industries.
薄叶山茶是台湾一种用于生产山茶油的本土山茶物种。本研究首次调查了薄叶山茶产油副产物,特别是果壳、种壳和籽粕的潜在抗氧化、抗酪氨酸酶和抗炎活性。结果发现,种壳的粗乙醇提取物具有最强的DPPH清除能力和对蘑菇酪氨酸酶的抑制活性,其次是果壳,而籽粕的活性最弱。粗提取物及其各组分对单酚酶的IC50值小于对二酚酶的IC50值。种壳富含酚类的甲醇组分(SM)可降低脂多糖(LPS)刺激的RAW 264.7细胞中一氧化氮(NO)的产生以及诱导型一氧化氮合酶(iNOS)的表达。它还可抑制LPS刺激下IL-1β的表达以及前列腺素E₂(PGE₂)和IL-6的分泌。SM强烈刺激血红素加氧酶1(HO-1)的表达,添加HO-1竞争性抑制剂锌原卟啉(ZnPP)可逆转对NO产生的抑制作用,表明HO-1参与了其抗炎活性。本研究中观察到的这些效应为薄叶山茶残渣在食品添加剂、医药和化妆品行业的再利用提供了证据。